论文标题
一维费米子超级晶格中的非热拓扑莫特绝缘子
Non-Hermitian topological Mott insulators in one-dimensional fermionic superlattices
论文作者
论文摘要
我们研究了相互作用引起的莫特绝缘子及其拓扑特性,该特性具有非重复跳跃或复杂值的相互作用的一维非柔性拼变的费米式超级晶格系统。对于非肾脏跳跃案例,低能中性激发光谱对边界条件敏感,这是非铁皮皮肤效应的表现。但是,与单粒子的情况不同,由于保利排除原理和排斥性相互作用,密切相关系统的颗粒密度不受非铁皮皮肤效应的影响。此外,由于非偏射跳跃,超晶格电位和强相关性的相互作用而发生异常的边界效应,因此,对于中性和电荷激发光谱,某些间隙模式都没有显示仅通过右特征向量定义的边缘激发。我们表明,差距状态的这些边缘激发只能通过生物表定特征向量来正确表征。此外,拓扑莫特阶段甚至在边界周围具有无间隙的粒子激发,甚至对于纯粹的虚拟值相互作用也存在,其中连续的量子zeno效应导致两个组分子效率之间有效的现场排斥。
We study interaction-induced Mott insulators, and their topological properties in a 1D non-Hermitian strongly-correlated spinful fermionic superlattice system with either nonreciprocal hopping or complex-valued interaction. For the nonreciprocal hopping case, the low-energy neutral excitation spectrum is sensitive to boundary conditions, which is a manifestation of the non-Hermitian skin effect. However, unlike the single-particle case, particle density of strongly correlated system does not suffer from the non-Hermitian skin effect due to the Pauli exclusion principle and repulsive interactions. Moreover, the anomalous boundary effect occurs due to the interplay of nonreciprocal hopping, superlattice potential, and strong correlations, where some in-gap modes, for both the neutral and charge excitation spectra, show no edge excitations defined via only the right eigenvectors. We show that these edge excitations of the in-gap states can be correctly characterized by only biorthogonal eigenvectors. Furthermore, the topological Mott phase, with gapless particle excitations around boundaries, exists even for the purely imaginary-valued interaction, where the continuous quantum Zeno effect leads to the effective on-site repulsion between two-component fermions.